4.6 Article Proceedings Paper

Distributed Optimal Control of Reactive Power and Voltage in Islanded Microgrids

Journal

IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS
Volume 53, Issue 1, Pages 340-349

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TIA.2016.2615033

Keywords

Distributed optimal control; islanded microgrid; reactive power sharing; state estimator; voltage regulation

Funding

  1. Danish Council for Strategic Research under the project Development of a Secure, Economic and Environmentally-Friendly Modern Power Systems [DSF 09-067255]
  2. European Union/ERC [321149-Harmony]

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This paper presents a distributed optimal control strategy for islanded microgrids, which allows performing reactive power sharing and voltage regulation without using a communication system. To perform the twofold objectives, a small signal model is first developed to reconstruct the system input-output relationship, which is evaluated through sensitivity analysis. A state estimator is then constructed to observe reactive power distribution and system voltages by local measurement. An optimal regulator is developed to perform both reactive power sharing and system voltage restoration. And the dynamic performance of the optimal controller is analyzed, from which the guideline for choosing controller parameters is formulated. The results obtained from sensitivity analysis, simulations, and experiments show that the proposed approach provides the expected reliability and flexibility for optimizing the reactive power sharing and system voltages restoration.

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